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9HRO

Solution NMR structure of the synthetic tobramycin riboswitch in complex with tobramycin

Summary for 9HRO
Entry DOI10.2210/pdb9hro/pdb
NMR InformationBMRB: 34972
DescriptorRNA (35-MER), TOBRAMYCIN (2 entities in total)
Functional Keywordsrna-ligand complex, riboswitch, aminoglycoside, translation regulation, rna
Biological sourcesynthetic construct
Total number of polymer chains1
Total formula weight11657.16
Authors
Duchardt-Ferner, E.,Woehnert, J. (deposition date: 2024-12-18, release date: 2025-10-01)
Primary citationDuchardt-Ferner, E.,Kraus, L.,Limouchi, A.,Suess, B.,Wohnert, J.
Structural basis for ligand recognition in the tobramycin riboswitch.
Nucleic Acids Res., 53:-, 2025
Cited by
PubMed Abstract: Recently, a novel tobramycin-responsive riboswitch was developed by a combination of Capture-SELEX and in vivo screening. This riboswitch regulates translation initiation in eukaryotes with a high dynamic range and remarkable ligand affinity and selectivity. Its secondary structure differs from all previously described aminoglycoside-binding RNA motifs, suggesting a novel mode of ligand recognition. To provide a structural basis for the remarkable regulatory efficiency and ligand selectivity of this riboswitch, we investigated its structure in complex with its cognate ligand tobramycin by high-resolution solution nuclear magnetic resonance spectroscopy. The structure of the complex reveals a novel structural organization for an aminoglycoside binding motif with a unique pattern of intermolecular hydrogen bonds and electrostatic interactions between the RNA and functional groups of all three rings of the ligand. In contrast to other aminoglycoside binding motifs, ligand binding of the tobramycin riboswitch is coupled with the formation of an extensive network of noncanonical RNA-RNA interactions, rationalizing the high ligand affinity of this small hairpin RNA. Comparison with the free form of the RNA shows that the latter is much less compact, lacking many RNA-RNA interactions, in particular in the bulge regions, thereby immediately providing a rationale for the exceptional switching efficiency of this synthetic riboswitch.
PubMed: 40902004
DOI: 10.1093/nar/gkaf817
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
Structure validation

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